Sedimentology and sequence stratigraphy of automated hydraulic flow units – The Permian Upper Dalan Formation, Persian Gulf
Седиментология и стратиграфия последовательностей автоматизированных гидравлических потоковых единиц — пермская верхняя формация Далан, Персидский залив
2022-10-19
SCID: 54.1/5gbhxvxj
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Flow-Zone IndicatorReservoir Quality IndexUpper Dalan FormationWinland R35anhydrite cementationdolomitizationevaporite-carbonate facieshomoclinal ramphydraulic flow unitssequence stratigraphy
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Abstract (AI)
The Upper Dalan (Khuff-equivalent) Formation constitutes the principal reservoir of the giant gas fields in the Persian Gulf Superbasin. A sedimentological and sequence stratigraphic analysis was conducted on selected cores from the South Pars, Kish, and Lavan gas fields, offshore Iran, to evaluate a recently proposed method for automatic reservoir zonation, and discuss the predictability of such defined zones. The succession consists of nine evaporite-carbonate lithofacies grouped into three shallow-marine facies associations (shoal, lagoon, and tidal flat) that were deposited on a low-gradient homoclinal ramp. Lithofacies are stacked into two complete long-term (3rd-order?) transgressive-regressive depositional sequences. Sequence boundaries were defined by facies stacking patterns and presence of evaporites and meteoric diagenetic features. The reservoir quality was improved by both early-stage dolomitization and dissolution, whereas pervasive pore-filling anhydrite cementation, compaction, and late-stage over-dolomitization reduced the reservoir quality. Whereas dolomitization overall slightly affected porosity, it significantly increased the permeability in mud-dominated lithofacies. Fibrous and bladed calcite rim cements, as well as micritization of the grain-dominated lagoon and shoal lithofacies, prevented porosity reduction during the early- and late-stage burial by building a stronger framework. Core-plug porosity and permeability measurements were used to calculate the Winland R35, Reservoir Quality Index (RQI), and Flow-Zone Indicator (FZI) values. A novel, fully automated approach, was used to effectively identify the hydraulic flow units (HFUs). The HFUs are sedimentologically distinct units with characteristic combinations of the original rock texture and the subsequent diagenetic overprint, and their subsurface position within the sequence stratigraphic framework may be predicted.
Key Findings
1
A novel fully automated method effectively identified hydraulic flow units (HFUs) that are sedimentologically distinct and predictable within the sequence stratigraphic framework.
2
Core-plug porosity and permeability were used to compute Winland R35, RQI, and FZI, enabling reservoir characterization.
3
Dolomitization had minor effect on porosity overall but significantly increased permeability in mud-dominated lithofacies.
4
Fibrous and bladed calcite rim cements and micritization in grain-dominated lagoon and shoal lithofacies preserved porosity during burial by strengthening the framework.
5
Lithofacies stack into two complete long-term (3rd-order?) transgressive-regressive depositional sequences with sequence boundaries defined by facies stacking, evaporites, and meteoric diagenesis.
6
Reservoir quality was improved by early-stage dolomitization and dissolution, while pore-filling anhydrite cementation, compaction, and late over-dolomitization reduced quality.
7
The Upper Dalan Formation is composed of nine evaporite-carbonate lithofacies grouped into three shallow-marine facies associations (shoal, lagoon, tidal flat) on a homoclinal ramp.
Research Object
Permian Upper Dalan Formation reservoir units (sedimentological cores from South Pars, Kish, and Lavan gas fields)
Research Subject
Sedimentology, sequence stratigraphy, diagenetic controls and prediction of automated hydraulic flow units (HFUs) including porosity–permeability behavior and reservoir quality indicators (Winland R35, RQI, FZI)
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2022-10-19
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